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715 lines
32 KiB
Perl
715 lines
32 KiB
Perl
#!/usr/bin/perl -w
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#
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# ============================== SUMMARY =====================================
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#
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# Program : check_snmp_temperature.pl
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# Version : 0.33
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# Date : Aug 08 2008
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# Author : William Leibzon - william@leibzon.org
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# Summary : This is a nagios plugin that checks temperature sensors
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# using SNMP. Dell, HP, Cisco and other types are supported
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# and for other systems OIDs can be easily specified too
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# Licence : GPL - summary below, text at http://www.fsf.org/licenses/gpl.txt
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#
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# =========================== PROGRAM LICENSE =================================
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program; if not, write to the Free Software
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# Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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#
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# ===================== INFORMATION ABOUT THIS PLUGIN =========================
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#
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# This Temperature check plugin that retreives temperature sensor values from
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# SNMP and can issue alerts if selected parameters are above given number
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# It also returns performance data for further nagios 2.0 post-processing
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#
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# This program is written and maintained by:
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# William Leibzon - william(at)leibzon.org
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# It is partially based on check_snmp_* plugins by:
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# Patrick Proy (patrick at proy.org)
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#
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# ============================= SETUP NOTES ====================================
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#
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# Make sure to check and if necessary adjust the the path to utils.pm
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# Make sure you have Net::SNMP perl module installed
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#
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# If you want to check Dell servers, HP server, Juniper routers or
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# Cisco Switches/Routers (cisco 7500, 5500, 2948) then you may skip
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# much of the configuration hassles and use pre-programmed settings
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# by using "--type" (or -T) parameter, you do still need to specify
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# though if you want output as C or F with '-o' option (see examples).
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# The plugin currently does not support finding critical & warning
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# thresholds which most systems also report in SNMP, so actual thresholds
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# you will need to specify as well.
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#
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# NOTE: If you've previously used 0.2x version of this plugin to
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# check HP equipment, beware that 0.3 version has "incompatible"
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# change in that it returns human-readable sensor names rather
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# then using HP locale ids to enumerate sensors. If you need
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# old behavior then instead of using '-T hp' as parameter
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# use '-N 1.3.6.1.4.1.232.6.2.6.8.1.3 -D 1.3.6.1.4.1.232.6.2.6.8.1.4'
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#
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# If you're using some other device then you need to check documentation to
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# figure out correct parameters for this plugin, then specify base temperature
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# sensor names table OID with '-N' and values table OID with '-D. You also need
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# to specify what base sensor temperature data type is with "-i" (see below).
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#
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# The way plugin works is to walk the snmp tree from base names OID and find
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# all the sensor names. Then it compares names given with '-a' (names are
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# seperated by ',') to those found in the snmp tree (in '-a' you're expected
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# to specify one word which would be found in the full sensor name and
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# is unique for thaqt `sensor) and uses OID ending (i.e. part of OID after
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# the base) and adds it to base value table OID to create OID to be retrieved
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# (similar to how you find ethernet statistics OIDs based on name of the
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# interface and in fact many of SNMP parameters are like that).
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#
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# Note: If you don't know temperature sensor names on your system do:
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# check_snmp_temperature -v -A '*' ...
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# (using '-v' option forces debugging output that should further help)
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#
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# If your system does not have table with sensor names you can still use
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# this plugin if you know exact temperature data OIDs. Then you specify list
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# of names sensors should be known by with '-n' option and list of data OIDs
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# with '-d' option (this can also be useful if you want to avoid having plugin
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# do snmp table walk each time as retrieving specific list of OIDs is faster).
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# You will still need to specify what is likely the same sensor names you
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# you put in '-n' with '-a' or '-A' option.
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#
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# Request: If you have an new type of device and as per above you figured
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# out SNMP parameters that work, please send me email with this
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# information so that I can add it as a new system type.
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#
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# The values retrieved are compared to specified warning and critical values,
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# but first the temperature has to be converted from base measurement units to
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# measurement units you want. These units are Celsius (C) or Fahrenheit (F)
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# or Kelvin (K) with input measurement unit specified with '-i' and output
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# specified with '-o'. For input you sometimes have situation where sensor
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# reports 10xRealValue, i.e. 33.5C is reported as 335 - this is supported
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# too and then input type is specified as '-i 10C'.
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#
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# Warning and critical values are specified with '-w' and '-c' and each
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# one must have exact same number of values (separated by ',') as number
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# of sensor names specified with '-a'. Any values you dont want to compare
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# you specify as 0 or just not specify (i.e. -w ',50,'). In some cases you
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# might not get data for specific sensor and want to substitute default
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# value - this is supported with '-u' option (note that default values
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# is in fact compared against -w and -c).
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#
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# Additionally if you want performance output then use '-f' option to get all
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# the sensors specified in '-a' or specify particular list of sensors for
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# performance data with '-A' (this list can include names not found in '-a').
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# A special option of -A '*' will allow to get data from all sensors found
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# and is this very useful to find what sensors you have with manual run.
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#
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# ========================= SETUP EXAMPLES ==================================
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#
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# define command {
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# command_name check_cisco_temperature
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# command_line $USER1$/check_snmp_temperature.pl -f -H $HOSTADDRESS$ --type=cisco1 -o F -C $ARG1$ -a $ARG2$ -w $ARG3$ -c $ARG4$
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# }
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#
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# define service{
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# use std-service
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# hostgroup_name cs2948
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# service_description Temperature
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# check_command check_cisco_temperature!foo!Chassis!160!190
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# }
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#
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# define command{
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# command_name check_dell_temperature
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# command_line $USER1$/check_snmp_temperature.pl -H $HOSTADDRESS$ -C public \
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# -N .1.3.6.1.4.1.674.10892.1.700.20.1.8 \
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# -D .1.3.6.1.4.1.674.10892.1.700.20.1.6 -i 10C -o F -u 0 \
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# -a ARG1$ -w $ARG2$ -c $ARG3$ -f
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# }
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#
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# define service {
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# use std-service
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# hostgroup_name dell_1750
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# service_description Temperature
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# check_command check_dell_temperature!CPU,Ambient,Bottom!110,90,0!135,110,0
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# }
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#
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# For some dell systems with all sensors enabled you can replace the above with:
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# check_command check_temperature!'CPU,PROC_1,PROC_2,Ambient,Bottom,BMC Planar,BMC Riser'!110,120,120,90,90,105,105!135,140,140,110,110,125,125
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#
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# ==================== CHANGES/RELEASE, TODO ==================================
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#
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# 0.33 - Aug 2008 : Full SNMPv3 support (contrib patch by Nicolas Deffayet)
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# 0.33 - May 2008 : Minor bug fixes. Added baytech pdu SNMP OIDs
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# 0.31 - Feb 2008 : Bug fix due to report by Michael Timmers. The issue
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# was with sensor list that contains a name which matches
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# by regex with some other later sensor name. In this
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# case it was Juniper with "Routing Engine" which was
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# followed by "Routing Engine PCMCIA Card 0" sensor.
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# 0.3 - Jan 2008 : Added '-n' and '-d' options to specify exact list of
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# sensor names and oids.
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# Also when you specify 'hp' type, the plugin will now
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# provide human-readable sensor names rather then purely
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# an id of their sensor locale (this is basicly special
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# hack just for HP since I don't know anyone else who
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# hard-coded sensor names by ids into SNMP MIB).
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# 0.23 - Dec 2007 : Bug Fixes (especially one involving F as input format)
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#
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# TODO and older revision history:
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#
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# 1. [DONE - Aug 2006] To support multiple types of equipment add config
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# array/hash and --type parameter
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# 2. More plugin types for various other equipment need to be added ...
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# [DONE - Dec 2006] - added Juniper & HP
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# 3. Need to update warn & crit parameters parsing code so it would support
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# both low and high values with '<' and '>' prefixed and using '~' for
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# don't check rather then 0
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# [DONE - Dec 2006] - added quick hack to interpret empty values
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# (i.e. -w ",90,") as dont check instead of specifying '0' directly
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# Note: Low temperature value checks are rarely needed for network
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# equipment so this is not high priority right now and will
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# be done together with #4 most likely as part of some general
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# library that would be shared with check_snmp_table and quite
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# likely other plugins where multiple "attributes" are specified
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# 4. Support specifying table OIDs for temperature threashold values.
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# I'll do it only after adding optional file caching so these values
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# can be retrieved about once every day rather then for each check.
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#
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# Note: if you want #3 or #4 done faster for specific application,
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# contact me privately to discuss
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#
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# ========================== START OF PROGRAM CODE ============================
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use strict;
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use Net::SNMP;
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use Getopt::Long;
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# use lib "/usr/lib/nagios/plugins";
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# use utils qw(%ERRORS $TIMEOUT);
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# uncomment two lines below and comment out two above lines if you do not have nagios' utils.pm
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my $TIMEOUT = 20;
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my %ERRORS=('OK'=>0,'WARNING'=>1,'CRITICAL'=>2,'UNKNOWN'=>3,'DEPENDENT'=>4);
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# Below is hash array for several types of equipment, format here is that
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# key is name you can specify in "--type" and data for that key is 3-value
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# array with 1st value sensor names table OID (-N option), 2nd is sensor
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# data table OID (-D option) and 3rd is type of temperature reading (-i)
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# Additionally instead of specifying sensor names table OID and sensor data
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# root table OID, the first two arguments to array can be "" and then 4th and
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# 5th argument should be arrays first with list of sensor names and 2nd with
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# list of OIDs for data to be retrieved (see below for how its done for Alteon)
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my %system_types = ( "dell" => [ "1.3.6.1.4.1.674.10892.1.700.20.1.8", "1.3.6.1.4.1.674.10892.1.700.20.1.6", "10C" ],
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"cisco1" => [ "1.3.6.1.4.1.9.9.13.1.3.1.2", "1.3.6.1.4.1.9.9.13.1.3.1.3", "C" ],
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"cisco" => [ "1.3.6.1.4.1.9.9.13.1.3.1.2", "1.3.6.1.4.1.9.9.13.1.3.1.3", "C" ], # same as cisco 1 for now, this may change
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"juniper" => [ "1.3.6.1.4.1.2636.3.1.13.1.5", "1.3.6.1.4.1.2636.3.1.13.1.7", "C" ], # somebody verify it, dont have juniper right now
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"hp" => [ "1.3.6.1.4.1.232.6.2.6.8.1.3", "1.3.6.1.4.1.232.6.2.6.8.1.4", "C" ],
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"alteon" => [ "", "", "C", ['RearLeftSensor', 'RearMiddleSensor', 'FrontMiddleSensor', 'FrontRightSensor'], ['1.3.6.1.4.1.1872.2.1.1.6.0','1.3.6.1.4.1.1872.2.1.1.7.0','1.3.6.1.4.1.1872.2.1.1.8.0','1.3.6.1.4.1.1872.2.1.1.9.0'] ], # why do they need to make these alteons so proprietory and hard to deal with?
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"baytech" => [ "1.3.6.1.4.1.4779.1.3.5.2.1.2", "1.3.6.1.4.1.4779.1.3.5.2.1.8", "10C" ], # baytech pdu
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);
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# APC OID for the temperature is .1.3.6.1.4.1.318.1.1.2.1.1.0
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# APC OID for the humidity is .1.3.6.1.4.1.318.1.1.2.1.2.0
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# Cisco fans: .1.3.6.1.4.1.9.9.13.1.4.1.3
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# HP switch temperature : .1.3.6.1.4.1.11.2.14.11.1.2.6.1.4.4
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# HP switch fan: .1.3.6.1.4.1.11.2.14.11.1.2.6.1.4.1
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my $Version='0.33';
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my $o_host= undef; # hostname
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my $o_community= undef; # community
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my $o_port= 161; # SNMP port
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my $o_help= undef; # help option
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my $o_verb= undef; # verbose mode
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my $o_version= undef; # version info option
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my $o_warn= undef; # warning level option
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my @o_warnL= (); # array for above list
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my $o_crit= undef; # Critical level option
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my @o_critL= (); # array for above list
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my $o_perf= undef; # Performance data option
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my $o_timeout= 5; # Default 5s Timeout
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my $o_version2= undef; # use snmp v2c
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# SNMPv3 specific
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my $o_login= undef; # Login for snmpv3
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my $o_passwd= undef; # Pass for snmpv3
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my $v3protocols=undef; # V3 protocol list.
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my $o_authproto='md5'; # Auth protocol
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my $o_privproto='des'; # Priv protocol
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my $o_privpass= undef; # priv password
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my $o_attr= undef; # What attribute(s) to check (specify more then one separated by '.')
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my @o_attrL= (); # array for above list
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my $o_perfattr= undef; # List of attributes to only provide values in performance data but no checking
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my @o_perfattrL=(); # array for above list
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my $o_ounit= 'C'; # Output Temperature Measurement Units - can be 'C', 'F' or 'K'
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my $o_iunit= 'C'; # Incoming Temperature Measurement Units - can prefix with number if its n*temp
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my $oid_names= undef; # OID for base of sensor attribute names
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my $oid_data= undef; # OID for base of actual data for those attributes found when walking name base
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my $o_names= undef; # List of sensor names (as opposed to specifying names table)
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my $o_unkdef= undef; # Default value to report for unknown attributes
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my $o_type= undef; # Type of system to check (predefined values for $oid_names, $oid_data, $oid_iunit)
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my $o_sensornames=undef; # Option specifying list of sensor names that then go into @ar_sensornames array
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my $o_sensoroids=undef; # Option specifying list of sensor oids that then go into @ar_sensoroids array
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my @ar_sensornames=(); # List of sensor names if specified in the sensor_types array
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my @ar_sensoroids=(); # List of sensor data oids if specified in sensor_types array
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# This is hack for HP based on cpqHeTemperatureLocale OID from cpqhlth.mib to map reported locale id to real name
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my %hp_locale = ( 1=> ['OTHER',1], 2=> ['UNKNOWN',1], 3=> ['System', 1], 4=> ['SystemBoard',1], 5=> ['ioBoard',1],
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6=> ['CPU',1], 7=> ['Memory',1], 8=> ['Storage',1], 9=> ['RemovableMedia',1],
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10=> ['PowerSupply',1], 11=> ['Ambient',1], 12=> ['Chassis',1], 13=> ['BridgeCard',1] );
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sub print_version { print "$0: $Version\n" };
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sub print_usage {
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print "Usage: $0 [-v] -H <host> -C <snmp_community> [-2] | (-l login -x passwd [-X pass -L <authp>,<privp>]) [-p <port>] [-t <timeout>] -T dell|hp|cisco1|juniper|alteon | [-N <oid_attribnames> -D <oid_attribdata>] | [-n <list of sensor names> -d <list of sensor oids>] [-a <attributes to check> -w <warn levels> -c <crit levels> [-f]] [-A <attributes for perfdata>] [-o <out_temp_unit: C|F|K>] [-i <in_temp_unit>] [-u <unknown_default>] [-V]\n";
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}
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# Return true if arg is a number
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sub isnum {
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my $num = shift;
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if ( $num =~ /^(\d+\.?\d*)|(^\.\d+)$/ ) { return 1 ;}
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return 0;
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}
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sub help {
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print "\nSNMP Temperature Monitor for Nagios version ",$Version,"\n";
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print " by William Leibzon - william(at)leibzon.org\n\n";
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print_usage();
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print <<EOD;
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-v, --verbose
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print extra debugging information
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-h, --help
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print this help message
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-H, --hostname=HOST
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name or IP address of host to check
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-C, --community=COMMUNITY NAME
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community name for the host's SNMP agent (implies v 1 protocol)
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-2, --v2c
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Use snmp v2c
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-l, --login=LOGIN ; -x, --passwd=PASSWD
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Login and auth password for snmpv3 authentication
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If no priv password exists, implies AuthNoPriv
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-X, --privpass=PASSWD
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Priv password for snmpv3 (AuthPriv protocol)
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-L, --protocols=<authproto>,<privproto>
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<authproto> : Authentication protocol (md5|sha : default md5)
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<privproto> : Priv protocole (des|aes : default des)
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-P, --port=PORT
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SNMP port (Default 161)
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-w, --warn=INT[,INT[,INT[..]]]
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warning temperature level(s) (if more then one attribute is checked, must have multiple values)
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-c, --crit=INT[,INT[,INT[..]]]
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critical temperature level(s) (if more then one attribute is checked, must have multiple values)
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-f, --perfdata
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Perfparse compatible output
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-t, --timeout=INTEGER
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timeout for SNMP in seconds (Default: 5)
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-V, --version
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prints version number
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-N, --oidtable_attribnames=OID_STRING
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Base table OID to walk through to find names of those attributes supported and from that corresponding data OIDs
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-D, --oidtable_attribdata=OID_STRING
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Base table OID for sensor attribute data, one number is added to that to make up full attribute OID
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-n, --sensor_names=STRING[,STRING[..]]
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List of sensor names when -N is not used and sensors are specified with exeact oids
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-d, --sensor_oids=OID_STRING[,OID_STRING[..]]
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List of exact data OIDs for sensors specified with -n (specify this when -N and -D are not used)
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-a, --attributes=STRING[,STRING[..]]
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Which attribute(s) to check. This is used as regex to check if attribute is found in sensor names.
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As an example for Dell the attribute names to use are: PROC_1, PROC_2, Ambient, Planar, Riser
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-A, --perf_attributes=STRING[,STRING[..]]
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Which attribute(s) to add to as part of performance data output. These names can be different then the
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ones listed in '-a' to only output attributes in perf data but not check. Special value of '*' gets them all.
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-f, --perfparse
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Used only with '-a'. Causes to output data not only in main status line but also as perfparse output
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-o --out_temp_unit=C|F|K
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What temperature measurement units are used for output and warning/critical - 'C', 'F' or 'K' - default is 'C'
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-i --in_temp_unit=[num]C|F|K
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What temperature measurement reported by data OID - format is <num>C|F|K (default is 'C')
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where num is used if data is num*realdata, i.e. if reported data of 330 means 33C, then it is: -i 10C
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-u, --unknown_default=INT
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If attribute is not found then report the output as this number (i.e. -u 0)
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-T, --type=dell|hp|cisco1|juniper|alteon
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This allows to use pre-defined system type to set Base, Data OIDs and incoming temperature measurement type
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Currently support systems types are: dell, hp, cisco1 (7500, 5500, 2948, etc), juniper, alteon
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EOD
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}
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# For verbose output - don't use it right now
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sub verb { my $t=shift; print $t,"\n" if defined($o_verb) ; }
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# Get the alarm signal (just in case snmp timout screws up)
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$SIG{'ALRM'} = sub {
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print ("ERROR: Alarm signal (Nagios time-out)\n");
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exit $ERRORS{"UNKNOWN"};
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};
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# converts temperature from input format unit into output format units
|
|
sub convert_temp {
|
|
my ($temp, $in_unit, $out_unit) = @_;
|
|
|
|
# that is not super great algorithm if both input and output are F
|
|
my $in_mult = 1;
|
|
my $ctemp = undef;
|
|
$in_mult = $1 if $in_unit =~ /(\d+)\w/;
|
|
$in_unit =~ s/\d+//;
|
|
$ctemp = $temp / $in_mult if $in_unit eq 'C';
|
|
$ctemp = ($temp / $in_mult - 32) / 1.8 if $in_unit eq 'F';
|
|
$ctemp = $temp / $in_mult - 273.15 if $in_unit eq 'K';
|
|
$ctemp = $temp / $in_mult if !defined($ctemp);
|
|
return $ctemp if $out_unit eq "C";
|
|
return $ctemp * 1.8 + 32 if $out_unit eq "F";
|
|
return $ctemp + 273.15 if $out_unit eq "K";
|
|
return $ctemp; # should not get here
|
|
}
|
|
|
|
sub check_options {
|
|
Getopt::Long::Configure ("bundling");
|
|
GetOptions(
|
|
'v' => \$o_verb, 'verbose' => \$o_verb,
|
|
'h' => \$o_help, 'help' => \$o_help,
|
|
'H:s' => \$o_host, 'hostname:s' => \$o_host,
|
|
'P:i' => \$o_port, 'port:i' => \$o_port,
|
|
'C:s' => \$o_community, 'community:s' => \$o_community,
|
|
'l:s' => \$o_login, 'login:s' => \$o_login,
|
|
'x:s' => \$o_passwd, 'passwd:s' => \$o_passwd,
|
|
'X:s' => \$o_privpass, 'privpass:s' => \$o_privpass,
|
|
'L:s' => \$v3protocols, 'protocols:s' => \$v3protocols,
|
|
't:i' => \$o_timeout, 'timeout:i' => \$o_timeout,
|
|
'V' => \$o_version, 'version' => \$o_version,
|
|
'2' => \$o_version2, 'v2c' => \$o_version2,
|
|
'c:s' => \$o_crit, 'critical:s' => \$o_crit,
|
|
'w:s' => \$o_warn, 'warn:s' => \$o_warn,
|
|
'f' => \$o_perf, 'perfparse' => \$o_perf,
|
|
'a:s' => \$o_attr, 'attributes:s' => \$o_attr,
|
|
'A:s' => \$o_perfattr, 'perf_attributes:s' => \$o_perfattr,
|
|
'o:s' => \$o_ounit, 'out_temp_unit:s' => \$o_ounit,
|
|
'i:s' => \$o_iunit, 'in_temp_unit:s' => \$o_iunit,
|
|
'u:i' => \$o_unkdef, 'unknown_default:i' => \$o_unkdef,
|
|
'N:s' => \$oid_names, 'oid_attribnames:s' => \$oid_names, 'oidtable_attribnames:s' => \$oid_names,
|
|
'D:s' => \$oid_data, 'oid_attribdata:s' => \$oid_data, 'oidtable_attribdata:s' => \$oid_data,
|
|
'n:s' => \$o_sensornames, 'sensor_names:s' => \$o_sensornames,
|
|
'd:s' => \$o_sensoroids, 'sensor_oids:s' => \$o_sensoroids,
|
|
'T:s' => \$o_type, 'type:s' => \$o_type
|
|
);
|
|
if (defined($o_help) ) { help(); exit $ERRORS{"UNKNOWN"}; }
|
|
if (defined($o_version)) { print_version(); exit $ERRORS{"UNKNOWN"}; }
|
|
if (! defined($o_host) ) # check host and filter
|
|
{ print "No host defined!\n";print_usage(); exit $ERRORS{"UNKNOWN"}; }
|
|
# check snmp information
|
|
if ( !defined($o_community) && (!defined($o_login) || !defined($o_passwd)) )
|
|
{ print "Put snmp login info!\n"; print_usage(); exit $ERRORS{"UNKNOWN"}}
|
|
if ((defined($o_login) || defined($o_passwd)) && (defined($o_community) || defined($o_version2)) )
|
|
{ print "Can't mix snmp v1,2c,3 protocols!\n"; print_usage(); exit $ERRORS{"UNKNOWN"}}
|
|
if (defined ($v3protocols)) {
|
|
if (!defined($o_login)) { print "Put snmp V3 login info with protocols!\n"; print_usage(); exit $ERRORS{"UNKNOWN"}}
|
|
my @v3proto=split(/,/,$v3protocols);
|
|
if ((defined ($v3proto[0])) && ($v3proto[0] ne "")) {$o_authproto=$v3proto[0]; } # Auth protocol
|
|
if (defined ($v3proto[1])) {$o_privproto=$v3proto[1]; } # Priv protocol
|
|
if ((defined ($v3proto[1])) && (!defined($o_privpass))) {
|
|
print "Put snmp V3 priv login info with priv protocols!\n"; print_usage(); exit $ERRORS{"UNKNOWN"}}
|
|
}
|
|
$o_ounit =~ tr/[a-z]/[A-Z]/;
|
|
if ($o_ounit ne 'C' && $o_ounit ne 'F' && $o_ounit ne 'K')
|
|
{ print "Invalid output measurement unit specified!\n"; print_usage(); exit $ERRORS{"UNKNOWN"}; }
|
|
$o_iunit =~ tr/[a-z]/[A-Z]/;
|
|
if ($o_iunit !~ /\d*[C|K|F]/)
|
|
{ print "Invalid input measurement unit specified!\n"; print_usage(); exit $ERRORS{"UNKNOWN"}; }
|
|
if (defined ($o_type)) {
|
|
if (defined($oid_names) || defined($oid_data) || defined($o_sensornames) || defined($o_sensoroids))
|
|
{ print "Please either specify specify system type (-T) OR base SNMP OIDs for name (-N) and data (-D) tables OR exact list of sensor names (-n) and data OIDs (-d) !\n"; print_usage(); exit $ERRORS{"UNKNOWN"}; }
|
|
if (defined($system_types{$o_type})) {
|
|
$oid_names = $system_types{$o_type}[0];
|
|
$oid_data = $system_types{$o_type}[1];
|
|
$o_iunit = $system_types{$o_type}[2];
|
|
@ar_sensornames= @{$system_types{$o_type}[3]} if defined($system_types{$o_type}[3]) && !$oid_names;
|
|
@ar_sensoroids= @{$system_types{$o_type}[4]} if defined($system_types{$o_type}[4]) && !$oid_data;
|
|
}
|
|
else { print "Unknown system type $o_type !\n"; print_usage(); exit $ERRORS{"UNKNOWN"}; }
|
|
}
|
|
if (defined($o_sensornames) && defined($o_sensoroids)) {
|
|
if (defined($oid_names) || defined($oid_data)) {
|
|
print "You can not combine -n / -d options with -N / -D\n"; print_usage(); exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
else {
|
|
@ar_sensornames = split(/,/, $o_sensornames);
|
|
@ar_sensoroids = split(/,/, $o_sensoroids);
|
|
if (scalar(@ar_sensornames) != scalar(@ar_sensoroids)) {
|
|
printf "Number of sensor names specified at -n (%d) must be equal to number of data OIDs specified with -d (%d)\n",
|
|
scalar(@ar_sensornames), scalar(@ar_sensoroids);
|
|
print_usage();
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
}
|
|
}
|
|
if (scalar(@ar_sensornames)==0 && scalar(@ar_sensoroids)==0 && !(defined($oid_names) && defined($oid_data)))
|
|
{ print "Specify system type (-T) OR base SNMP OIDs for names (-N) and data (-D) tables OR exact list of sensor names (-n) and data OIDs (-d) !\n"; print_usage(); exit $ERRORS{"UNKNOWN"}; }
|
|
|
|
if (defined($o_perfattr)) {
|
|
@o_perfattrL=split(/,/ ,$o_perfattr) if defined($o_perfattr);
|
|
}
|
|
if (defined($o_warn) || defined($o_crit) || defined($o_attr)) {
|
|
if (defined($o_attr)) {
|
|
@o_attrL=split(/,/, $o_attr);
|
|
@o_warnL=split(/,/ ,$o_warn) if defined($o_warn);
|
|
@o_critL=split(/,/ ,$o_crit) if defined($o_crit);
|
|
}
|
|
else {
|
|
print "Specifying warning and critical levels requires '-a' parameter with attribute names\n";
|
|
print_usage();
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
if (scalar(@o_warnL)!=scalar(@o_attrL) || scalar(@o_critL)!=scalar(@o_attrL)) {
|
|
printf "Number of spefied warning levels (%d) and critical levels (%d) must be equal to the number of attributes specified at '-a' (%d). If you need to ignore some attribute specify it as '0'\n", scalar(@o_warnL), scalar(@o_critL), scalar(@o_attrL);
|
|
print_usage();
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
for (my $i=0; $i<scalar(@o_attrL); $i++) {
|
|
$o_warnL[$i]=0 if $o_warnL[$i] eq "";
|
|
$o_critL[$i]=0 if $o_critL[$i] eq "";
|
|
if (!isnum($o_warnL[$i]) || !isnum($o_critL[$i])) {
|
|
print "Numeric value required for warning and critical !\n";
|
|
print_usage();
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
if ($o_warnL[$i] > $o_critL[$i] && $o_critL[$i]!=0) {
|
|
print "warning must be <= critical !\n";
|
|
print_usage();
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
}
|
|
}
|
|
if (scalar(@o_attrL)==0 && scalar(@o_perfattrL)==0) {
|
|
print "You must specify list of attributes with either '-a' or '-A'\n";
|
|
print_usage();
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
}
|
|
|
|
########## MAIN #######
|
|
|
|
check_options();
|
|
|
|
# Check global timeout if something goes wrong
|
|
if (defined($TIMEOUT)) {
|
|
verb("Alarm at $TIMEOUT");
|
|
alarm($TIMEOUT);
|
|
} else {
|
|
verb("no global timeout defined : $o_timeout + 10");
|
|
alarm ($o_timeout+10);
|
|
}
|
|
|
|
# Connect to host
|
|
my ($session,$error);
|
|
if ( defined($o_login) && defined($o_passwd)) {
|
|
# SNMPv3 login
|
|
verb("SNMPv3 login");
|
|
if (!defined ($o_privpass)) {
|
|
verb("SNMPv3 AuthNoPriv login : $o_login, $o_authproto");
|
|
($session, $error) = Net::SNMP->session(
|
|
-hostname => $o_host,
|
|
-version => '3',
|
|
-username => $o_login,
|
|
-authpassword => $o_passwd,
|
|
-authprotocol => $o_authproto,
|
|
-timeout => $o_timeout
|
|
);
|
|
} else {
|
|
verb("SNMPv3 AuthPriv login : $o_login, $o_authproto, $o_privproto");
|
|
($session, $error) = Net::SNMP->session(
|
|
-hostname => $o_host,
|
|
-version => '3',
|
|
-username => $o_login,
|
|
-authpassword => $o_passwd,
|
|
-authprotocol => $o_authproto,
|
|
-privpassword => $o_privpass,
|
|
-privprotocol => $o_privproto,
|
|
-timeout => $o_timeout
|
|
);
|
|
}
|
|
} else {
|
|
if (defined ($o_version2)) {
|
|
# SNMPv2 Login
|
|
verb("SNMP v2c login");
|
|
($session, $error) = Net::SNMP->session(
|
|
-hostname => $o_host,
|
|
-version => 2,
|
|
-community => $o_community,
|
|
-port => $o_port,
|
|
-timeout => $o_timeout
|
|
);
|
|
} else {
|
|
# SNMPV1 login
|
|
verb("SNMP v1 login");
|
|
($session, $error) = Net::SNMP->session(
|
|
-hostname => $o_host,
|
|
-community => $o_community,
|
|
-port => $o_port,
|
|
-timeout => $o_timeout
|
|
);
|
|
}
|
|
}
|
|
if (!defined($session)) {
|
|
printf("ERROR opening session: %s.\n", $error);
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
|
|
# next part of the code builds list of attributes to be retrieved
|
|
my $i;
|
|
my $oid;
|
|
my $line;
|
|
my $attr;
|
|
my @varlist = ();
|
|
my %dataresults;
|
|
my $result;
|
|
|
|
for ($i=0;$i<scalar(@o_attrL);$i++) {
|
|
$dataresults{$o_attrL[$i]} = ["check", undef, undef];
|
|
}
|
|
if (defined($o_perfattr) && $o_perfattr ne '*') {
|
|
for ($i=0;$i<scalar(@o_perfattrL);$i++) {
|
|
$dataresults{$o_perfattrL[$i]} = ["perf", undef, undef];
|
|
}
|
|
}
|
|
|
|
if (scalar(@ar_sensornames)==0) {
|
|
verb("Retrieving SNMP table $oid_names to find sensor attribute names");
|
|
$result = $session->get_table( -baseoid => $oid_names );
|
|
if (!defined($result)) {
|
|
printf("ERROR: Problem retrieving OID %s table: %s.\n", $oid_names, $session->error);
|
|
$session->close();
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
L1: foreach $oid (Net::SNMP::oid_lex_sort(keys %{$result})) {
|
|
$line=$result->{$oid};
|
|
verb("got $oid : $line");
|
|
# special hack for HP
|
|
if (defined($o_type) && $o_type eq 'hp' && exists($hp_locale{$line})) {
|
|
$line = $hp_locale{$result->{$oid}}[0] ."_". $hp_locale{$result->{$oid}}[1];
|
|
$hp_locale{$result->{$oid}}[1]++;
|
|
verb("HP hack: interpreting ".$result->{$oid}." as $line");
|
|
}
|
|
if (defined($o_perfattr) && $o_perfattr eq '*') {
|
|
$oid =~ s/$oid_names/$oid_data/;
|
|
$dataresults{$line} = ["perf", $oid, undef];
|
|
unshift(@varlist,$oid);
|
|
verb("match found based on -A '*', now set to retrieve $oid");
|
|
}
|
|
foreach $attr (keys %dataresults) {
|
|
if ($line =~ /$attr/ && !defined($dataresults{$attr}[1])) {
|
|
$oid =~ s/$oid_names/$oid_data/;
|
|
$dataresults{$attr}[1] = $oid;
|
|
unshift(@varlist,$oid) if !defined($varlist[0]) ||
|
|
$varlist[0] ne $oid;
|
|
verb("match found for $attr, now set to retrieve $oid");
|
|
next L1;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
else {
|
|
my $i;
|
|
for ($i=0;$i<scalar(@ar_sensornames);$i++) {
|
|
$line=$ar_sensornames[$i];
|
|
$oid=$ar_sensoroids[$i];
|
|
if (defined($o_perfattr) && $o_perfattr eq '*') {
|
|
$dataresults{$line} = ["perf", $oid, undef];
|
|
unshift(@varlist,$oid);
|
|
verb("match found based on -A '*', now set to retrieve $oid");
|
|
}
|
|
L2: foreach $attr (keys %dataresults) {
|
|
if ($line =~ /$attr/ && !defined($dataresults{$attr}[1])) {
|
|
$dataresults{$attr}[1] = $oid;
|
|
unshift(@varlist,$oid) if !defined($varlist[0]) ||
|
|
$varlist[0] ne $oid;
|
|
verb("match found for $attr, now set to retrieve $oid");
|
|
next L2;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
# now we actually retrieve the attributes
|
|
my $statuscode = "OK";
|
|
my $statusinfo = "";
|
|
my $statusdata = "";
|
|
my $perfdata = "";
|
|
|
|
verb("Getting SNMP data for oids" . join(" ",@varlist));
|
|
$result = $session->get_request(
|
|
-Varbindlist => \@varlist
|
|
);
|
|
if (!defined($result)) {
|
|
printf("ERROR: Can not retrieve OID(s) %s: %s.\n", join(" ",@varlist), $session->error);
|
|
$session->close();
|
|
exit $ERRORS{"UNKNOWN"};
|
|
}
|
|
else {
|
|
foreach $attr (keys %dataresults) {
|
|
if (defined($dataresults{$attr}[1]) && defined($$result{$dataresults{$attr}[1]})) {
|
|
$dataresults{$attr}[2]=convert_temp($$result{$dataresults{$attr}[1]},$o_iunit,$o_ounit);
|
|
verb("got $dataresults{$attr}[1] : $attr = $dataresults{$attr}[2]");
|
|
}
|
|
else {
|
|
if (defined($o_unkdef)) {
|
|
$dataresults{$attr}[2]=$o_unkdef;
|
|
verb("could not find snmp data for $attr, setting to to default value $o_unkdef");
|
|
}
|
|
else {
|
|
verb("could not find snmp data for $attr");
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
# loop to check if warning & critical attributes are ok
|
|
for ($i=0;$i<scalar(@o_attrL);$i++) {
|
|
if (defined($dataresults{$o_attrL[$i]}[2])) {
|
|
if ($dataresults{$o_attrL[$i]}[2]>$o_critL[$i] && $o_critL[$i]>0) {
|
|
$statuscode="CRITICAL";
|
|
$statusinfo .= " " . $o_attrL[$i] . " Temperature is " . $dataresults{$o_attrL[$i]}[2] . $o_ounit . " > ". $o_critL[$i] . $o_ounit;
|
|
}
|
|
elsif ($dataresults{$o_attrL[$i]}[2]>$o_warnL[$i] && $o_warnL[$i]>0) {
|
|
$statuscode="WARNING" if $statuscode eq "OK";
|
|
$statusinfo .= " " . $o_attrL[$i] . " Temperature is " . $dataresults{$o_attrL[$i]}[2] . $o_ounit . " > ". $o_warnL[$i] . $o_ounit;
|
|
}
|
|
else {
|
|
$statusdata .= "," if ($statusdata);
|
|
$statusdata .= " " . $o_attrL[$i] . " Temperature is " . $dataresults{$o_attrL[$i]}[2] . $o_ounit;
|
|
}
|
|
$perfdata .= " " . $o_attrL[$i] . "=" . $dataresults{$o_attrL[$i]}[2] if defined($o_perf) && $dataresults{$o_attrL[$i]}[0] ne "perf";
|
|
}
|
|
else {
|
|
$statusdata .= "," if ($statusdata);
|
|
$statusdata .= " $o_attrL[$i] data is missing";
|
|
}
|
|
}
|
|
|
|
# add data for performance-only attributes
|
|
if (defined($o_perfattr) && $o_perfattr eq '*') {
|
|
foreach $attr (keys %dataresults) {
|
|
if ($dataresults{$attr}[0] eq "perf" && defined($dataresults{$attr}[2])) {
|
|
$perfdata .= " " . $attr . "=" . $dataresults{$attr}[2];
|
|
}
|
|
}
|
|
}
|
|
else {
|
|
for ($i=0;$i<scalar(@o_perfattrL);$i++) {
|
|
if (defined($dataresults{$o_perfattrL[$i]}[2])) {
|
|
$perfdata .= " " . $o_perfattrL[$i] . "=" . $dataresults{$o_perfattrL[$i]}[2];
|
|
}
|
|
}
|
|
}
|
|
|
|
$session->close;
|
|
print $statuscode . $statusinfo;
|
|
print " -".$statusdata if $statusdata;
|
|
print " |".$perfdata if $perfdata;
|
|
print "\n";
|
|
|
|
exit $ERRORS{$statuscode};
|